Stress induced TDP-43 mobility loss independent of stress granules
Data files
May 03, 2023 version files 7.23 GB
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Batch_Files.rar
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Data_summaries.rar
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Example_Movie_G3BP1_stress_and_recovery.rar
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Excel_files.rar
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Movie_TDP-43_Halo_wildtype_80_100min_SA_stress_1000frames_20fps_JPEG.rar
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README.txt
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Sample_sizes_tracks_and_cells_per_tracking_condition.rar
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Spinning_disk_raw.rar
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STED_raw_data.rar
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Abstract
TAR DNA binding protein 43 (TDP-43) is closely related to the pathogenesis of amyotrophic lateral sclerosis (ALS) and translocates to stress granules (SGs). The role of SGs as aggregation-promoting “bioreactors” for TDP-43, however, is still under debate. We analyzed TDP-43 mobility and localization under different stress and recovery conditions using live cell single-molecule tracking and super-resolution microscopy. Besides reduced mobility within SGs, a stress induced decrease of TDP-43 mobility in the cytoplasm and the nucleus was observed. Stress removal led to a recovery of TDP-43 mobility, which strongly depended on the stress duration. ‘Stimulated-emission depletion microscopy’ (STED) and ‘tracking and localization microscopy’ (TALM) revealed not only TDP-43 substructures within stress granules but also numerous patches of slow TDP-43 species throughout the cytoplasm. The data provide new insights into the aggregation of TDP-43 in living cells and provide evidence suggesting that TDP-43 oligomerization takes place in the cytoplasm separate from SGs.